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Focused ultrasound actuation of shape memory polymers; acoustic-thermoelastic modeling and testing

机译:聚焦超声致动形状记忆聚合物; 声热弹性建模和测试

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摘要

Controlled drug delivery (CDD) technologies have received extensive attention recently. Despite recent efforts, drug releasing systems still face major challenges in practice, including low efficiency in releasing the pharmaceutical compounds at the targeted location with a controlled time rate. We present an experimentally-validated acoustic-thermoelastic mathematical framework for modeling the focused ultrasound (FU)-induced thermal actuation of shape memory polymers (SMPs). This paper also investigates the feasibility of using SMPs stimulated by FU for designing CDD systems. SMPs represent a new class of materials that have gained increased attention for designing biocompatible devices. These polymers have the ability of storing a temporary shape and returning to their permanent or original shape when subjected to external stimuli such as heat. In this work, FU is used as a trigger for noninvasively stimulating SMP-based systems. FU has a superior capability to localize the heating effect, thus initiating the shape recovery process only in selected parts of the polymer. The multiphysics model optimizes the design of a SMP-based CDD system through analysis of a filament as a constituting basestructure and quantifies its activation under FU. Experimental validations are performed using a SMP filament submerged in water coupled with the acoustic waves generated by a FU transducer. The modeling results are used to examine and optimize parameters such as medium properties, input power and frequency, location, geometry and chemical composition of the SMP to achieve favorable shape recovery of a potential drug delivery system.
机译:受控药物交付(CDD)技术最近受到广泛的关注。尽管最近的努力,药物释放系统在实践中仍面临重大挑战,包括以受控的时间率释放有针对性位置的药物化合物的低效率。我们提出了一种实验验证的声学热弹性数学框架,用于建模聚焦超声(FU) - 诱导形状记忆聚合物的热致动(SMPS)。本文还调查了使用FU刺激的SMPS设计CDD系统的可行性。 SMPS代表一类新的材料,这些材料已经增加了设计生物相容性设备的关注。当经受外部刺激如热量时,这些聚合物具有储存临时形状并返回其永久或原始形状的能力。在这项工作中,FU用作非刺激基于SMP的系统的触发器。 FU具有优异的能力来定位加热效果,从而仅在聚合物的选定部分中启动形状回收过程。多麦体型模型通过分析丝作为构成基座的灯丝来优化基于SMP的CDD系统的设计,并在富力下量化其激活。使用在与由富换能器产生的声波耦合的水中浸没在水中的SMP长丝进行实验验证。建模结果用于检查和优化SMP的中等特性,输入功率和频率,位置,几何和化学组成的参数,以实现潜在药物输送系统的良好形状回收。

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  • 来源
    《RSC Advances》 |2017年第72期|共18页
  • 作者单位

    Virginia Polytech Inst &

    State Univ Dept Biomed Engn &

    Mech Blacksburg VA 24061 USA;

    Virginia Polytech Inst &

    State Univ Dept Mech Engn Blacksburg VA 24061 USA;

    Virginia Polytech Inst &

    State Univ Dept Mech Engn Blacksburg VA 24061 USA;

    Virginia Polytech Inst &

    State Univ Dept Mech Engn Blacksburg VA 24061 USA;

    Virginia Polytech Inst &

    State Univ Dept Biomed Engn &

    Mech Blacksburg VA 24061 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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